DLA SMD-5962-90896 REV F-2010 MICROCIRCUIT LINEAR LOW NOISE HIGH SPEED PRECISION OPERATIONAL AMPLIFIER MONOLITHIC SILICON.pdf
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1、 REVISIONS LTR DESCRIPTION DATE (YR-MO-DA) APPROVED A Make changes to IIO, IIB, VOM+, VOM-, and AVDtests as specified in table I. Also, make changes to table IIC. Changes in accordance with N.O.R. 5962-R331-92. 92-11-04 M. A. FRYE B Delete outline letter G. Make changes to 3.10, VOM+and VOM-tests as
2、 specified in table I. Changes in accordance with N.O.R. 5962-R100-95. 95-03-21 M. A. FRYE C Add device types 03 and 04. Make changes to 1.3, 1.4, table I, and figure 1. Redrawn. 96-11-07 R. MONNIN D Drawing updated to reflect current requirements. - ro 03-01-14 R. MONNIN E Make limit changes to the
3、 Equivalent input noise current test as specified under Table I. - ro 06-11-17 R. MONNIN F Make limit changes to the equivalent input noise voltage test, peak-to-peak equivalent input noise voltage test, and equivalent input noise current test in Table I. -rrp 10-03-08 C. SAFFLE THE ORIGINAL FIRST S
4、HEET OF THIS DRAWING HAS BEEN REPLACED. REV SHEET REV SHEET REV STATUS REV F F F F F F F F F F F F F F OF SHEETS SHEET 1 2 3 4 5 6 7 8 9 10 11 12 13 14 PMIC N/A PREPARED BY RICK C. OFFICER DEFENSE SUPPLY CENTER COLUMBUS STANDARD MICROCIRCUIT DRAWING CHECKED BY CHARLES E. BESORE COLUMBUS, OHIO 43218-
5、3990 http:/www.dscc.dla.mil THIS DRAWING IS AVAILABLE FOR USE BY ALL DEPARTMENTS APPROVED BY MICHAEL A. FRYE MICROCIRCUIT, LINEAR, LOW NOISE, HIGH SPEED, PRECISION, OPERATIONAL AMPLIFIER, MONOLITHIC SILICON AND AGENCIES OF THE DEPARTMENT OF DEFENSE DRAWING APPROVAL DATE 90-10-02 AMSC N/A REVISION LE
6、VEL F SIZE A CAGE CODE 67268 5962-90896 SHEET 1 OF 14 DSCC FORM 2233 APR 97 5962-E135-10 Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-STANDARD MICROCIRCUIT DRAWING SIZE A 5962-90896 DEFENSE SUPPLY CENTER COLUMBUS COLUMBUS, OHIO 43218-3990 REVISION
7、 LEVEL F SHEET 2 DSCC FORM 2234 APR 97 1. SCOPE 1.1 Scope. This drawing documents two product assurance class levels consisting of high reliability (device classes Q and M) and space application (device class V). A choice of case outlines and lead finishes are available and are reflected in the Part
8、 or Identifying Number (PIN). When available, a choice of Radiation Hardness Assurance (RHA) levels is reflected in the PIN. 1.2 PIN. The PIN is as shown in the following example: 5962 - 90896 03 Q P X Federal stock class designator RHA designator (see 1.2.1) Device type (see 1.2.2) Device class des
9、ignator Case outline (see 1.2.4) Lead finish (see 1.2.5) / (see 1.2.3) / Drawing number 1.2.1 RHA designator. Device classes Q and V RHA marked devices meet the MIL-PRF-38535 specified RHA levels and are marked with the appropriate RHA designator. Device class M RHA marked devices meet the MIL-PRF-3
10、8535, appendix A specified RHA levels and are marked with the appropriate RHA designator. A dash (-) indicates a non-RHA device. 1.2.2 Device type(s). The device type(s) identify the circuit function as follows: Device type Generic number Circuit function 01 TLE2027M Low-noise high-speed precision o
11、perational amplifier 02 TLE2037M Low-noise high-speed precision uncompensated operational amplifier 03 TLE2027AM Low-noise high-speed precision operational amplifier 04 TLE2037AM Low-noise high-speed precision uncompensated operational amplifier 1.2.3 Device class designator. The device class design
12、ator is a single letter identifying the product assurance level as follows: Device class Device requirements documentation M Vendor self-certification to the requirements for MIL-STD-883 compliant, non-JAN class level B microcircuits in accordance with MIL-PRF-38535, appendix A Q or V Certification
13、and qualification to MIL-PRF-38535 1.2.4 Case outline(s). The case outline(s) are as designated in MIL-STD-1835 and as follows: Outline letter Descriptive designator Terminals Package style G MACY1-X8 8 Can P GDIP1-T8 or CDIP2-T8 8 Dual-in-line 2 CQCC1-N20 20 Square leadless chip carrier 1.2.5 Lead
14、finish. The lead finish is as specified in MIL-PRF-38535 for device classes Q and V or MIL-PRF-38535, appendix A for device class M. Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-STANDARD MICROCIRCUIT DRAWING SIZE A 5962-90896 DEFENSE SUPPLY CENTER
15、 COLUMBUS COLUMBUS, OHIO 43218-3990 REVISION LEVEL F SHEET 3 DSCC FORM 2234 APR 97 1.3 Absolute maximum ratings. 1/ 2/ Positive supply voltage (+VCC) . +19 V dc Negative supply voltage (-VCC) -19 V dc Differential input voltage . 1.2 V dc 3/ Input voltage range (VI) (any input) . VCC Input current (
16、IIN) (each input) 1 mA Output current (IOUT) 50 mA Total current into +VCCterminal . 50 mA Total current into -VCCterminal -50 mA Duration of short circuit current at ( or below ) +25C . Unlimited 4/ Storage temperature range . -65C to +150C Terminal temperature for 60 seconds: Case 2 . +260C Lead t
17、emperature, soldering 6 mm (1/16 inch) from case for 60 seconds: Cases G and P +300C Junction temperature (TJ) . +150C Power dissipation (PD): Case G 650 mW 5/ Case P . 1050 mW 5/ Case 2 1375 mW 5/ Thermal resistance, junction-to-case (JC) . See MIL-STD-1835 1.4 Recommended operating conditions. Sup
18、ply voltage (VCC) 4 V dc minimum, 19 V dc maximum Common-mode input voltage (VIC) (TA= +25C) . -11 V dc minimum, +11 V dc maximum Common-mode input voltage (VIC) (TA= -55C to +125C) . -10.2 V dc minimum, +10.2 V dc maximum Source resistance from ground to input terminals (RS) . 50 Ambient operating
19、free-air temperature (TA) . -55C to +125C _ 1/ Stresses above the absolute maximum rating may cause permanent damage to the device. Extended operation at the maximum levels may degrade performance and affect reliability. 2/ All voltage values, except differential voltages, are with respect to the mi
20、dpoint between +VCCand -VCC. 3/ Differential voltages are at the noninverting input with respect to the inverting input. Excessive current will flow if a differential input voltage in excess of approximately 1.2 V is applied between the inputs unless some limiting resistance is used. 4/ The output m
21、ay be shorted to either supply. Temperature and supply voltage must be limited to ensure that the maximum dissipation rating is not exceeded. 5/ Above TA= +25C derate at a factor of 5.2 mW/C for case G, 8.4 mW/C for case P, and 11.0 mW/C for case 2. Provided by IHSNot for ResaleNo reproduction or ne
22、tworking permitted without license from IHS-,-,-STANDARD MICROCIRCUIT DRAWING SIZE A 5962-90896 DEFENSE SUPPLY CENTER COLUMBUS COLUMBUS, OHIO 43218-3990 REVISION LEVEL F SHEET 4 DSCC FORM 2234 APR 97 2. APPLICABLE DOCUMENTS 2.1 Government specification, standards, and handbooks. The following specif
23、ication, standards, and handbooks form a part of this drawing to the extent specified herein. Unless otherwise specified, the issues of these documents are those cited in the solicitation or contract. DEPARTMENT OF DEFENSE SPECIFICATION MIL-PRF-38535 - Integrated Circuits, Manufacturing, General Spe
24、cification for. DEPARTMENT OF DEFENSE STANDARDS MIL-STD-883 - Test Method Standard Microcircuits. MIL-STD-1835 - Interface Standard Electronic Component Case Outlines. DEPARTMENT OF DEFENSE HANDBOOKS MIL-HDBK-103 - List of Standard Microcircuit Drawings. MIL-HDBK-780 - Standard Microcircuit Drawings
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